首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular Conductance of Nicked Nucleic Acid Duplexes
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Molecular Conductance of Nicked Nucleic Acid Duplexes

机译:切屑核酸双链体的分子导率

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This work investigates how the conductance of a nucleic acid duplex with a "nick" in its backbone compares with that of a duplex with a fully covalent backbone. Statistical analyses of the single-molecule conductance properties reveal that molecular junctions with a nicked duplex have an average conductance close to that found for non-nicked structures but exhibit greater variability in the molecular conductance. This effect is shown for both DNA homoduplexes and DNA/PNA heteroduplexes, with the heteroduplexes showing a greater average molecular conductance and a smaller degree of variability. The average molecular conductance of the heteroduplexes is also shown to be affected by their PNA content; the conductance of duplexes increases as the ratio of PNA to DNA increases. These observations suggest that the charge transfer properties of nucleic acid-based assemblies can support complex functions.
机译:该作品研究了核酸双链核酸双链体在其骨架中的导电与与完全共价骨架的双链体的“缺口”相比。 单分子电导性能的统计分析显示,具有切屑双链体的分子结具有靠近针对非切屑结构的平均电导,但在分子导量中表现出更大的可变性。 显示这种效果对于DNA同源单分性和DNA / PNA异渗透,其异渗透显示出更大的平均分子导率和较小程度的变异性。 异细胞的平均分子传导也显示为受其PNA含量的影响; 随着PNA与DNA的比率增加,双链体的电导增加。 这些观察结果表明,核酸基组件的电荷转移性能可以支持复杂的功能。

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